2023
DOI: 10.1021/acs.jpcb.3c03725
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Minimal Peptoid Dynamics Inform Self-Assembly Propensity

Hamish W. A. Swanson,
King Hang Aaron Lau,
Tell Tuttle

Abstract: Peptoids are structural isomers of natural peptides, with side chain attachment at the amide nitrogen, conferring this class of compounds with the ability to access both cis and trans ω torsions as well as an increased diversity of ψ/φ states with respect to peptides. Sampling within these dimensions is controlled through side chain selection, and an expansive set of viable peptoid residues exists. It has been shown recently that “minimal” di- and tripeptoids with … Show more

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“…We used this approach for peptoid-peptide molecules that failed to originally demonstrate propensity to gelate (Table S1). The difficulty in designing peptoid-only hydrogel sequences has been recently highlighted by the Lau and Tuttle groups . They utilized peptoid computational dynamics in order to discover the minimal di- or tripeptoid sequence that may inform self-assembly and nanostructure formation, as successfully outlined previously for tripeptides .…”
Section: Results and Discussionmentioning
confidence: 99%
“…We used this approach for peptoid-peptide molecules that failed to originally demonstrate propensity to gelate (Table S1). The difficulty in designing peptoid-only hydrogel sequences has been recently highlighted by the Lau and Tuttle groups . They utilized peptoid computational dynamics in order to discover the minimal di- or tripeptoid sequence that may inform self-assembly and nanostructure formation, as successfully outlined previously for tripeptides .…”
Section: Results and Discussionmentioning
confidence: 99%